Department of Pharmacology, The University of Toledo Toledo, OH, USA.
Department of Medicinal and Biological Chemistry, The University of Toledo Toledo, OH, USA.
Front Physiol. 2014 Feb 26;5:72. doi: 10.3389/fphys.2014.00072. eCollection 2014.
Dopamine plays a number of important physiological roles. However, activation of dopamine receptor type-5 (DR5) and its effect in renal epithelial cells have not been studied. Here, we show for the first time that DR5 is localized to primary cilia of LLCPK kidney cells. Renal epithelial cilia are mechanosensory organelles that sense and respond to tubular fluid-flow in the kidney. To determine the roles of DR5 and sensory cilia, we used dopamine to non-selectively and fenoldopam to selectively activate ciliary DR5. Compared to mock treatment, dopamine treated cells significantly increases the length of cilia. Fenoldopam further increases the length of cilia compared to dopamine treated cells. The increase in cilia length also increases the sensitivity of the cells in response to fluid-shear stress. The graded responses to dopamine- and fenoldopam-induced increase in cilia length further show that sensitivity to fluid-shear stress correlates to the length of cilia. Together, our studies suggest for the first time that dopamine or fenoldopam is an exciting agent that enhances structure and function of primary cilia. We further propose that dopaminergic agents can be used in "cilio-therapy" to treat diseases associated with abnormal cilia structure and/or function.
多巴胺发挥着许多重要的生理作用。然而,多巴胺受体 5 型(DR5)的激活及其在肾上皮细胞中的作用尚未得到研究。在这里,我们首次表明 DR5 位于 LLCPK 肾细胞的初级纤毛上。肾上皮细胞纤毛是机械感受器,可感知肾脏中管状液流并对其做出反应。为了确定 DR5 和感觉纤毛的作用,我们使用多巴胺非选择性地激活纤毛 DR5,使用芬氟拉明选择性地激活纤毛 DR5。与模拟处理相比,多巴胺处理的细胞显著增加了纤毛的长度。与多巴胺处理的细胞相比,芬氟拉明进一步增加了纤毛的长度。纤毛长度的增加也增加了细胞对流体切应力的敏感性。多巴胺和芬氟拉明诱导的纤毛长度增加的分级反应进一步表明,对流体切应力的敏感性与纤毛的长度相关。总之,我们的研究首次表明,多巴胺或芬氟拉明是一种增强初级纤毛结构和功能的激动剂。我们进一步提出,多巴胺能药物可用于“纤毛疗法”来治疗与纤毛结构和/或功能异常相关的疾病。